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Molecular biology and plant breeding

机译:分子生物学与植物育种

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摘要

The use of modern molecular biological techniques has played a significant role in elucidating various aspects of the molecular organization of plant genes. Most of the information gained concerns characters and phenomena that are of relevance to plant breeding. It has been shown at the molecular level that cereal and legume seed storage proteins are controlled by complex multigenic nuclear loci. The analysis of movable nuclear genes, exemplified by the Ds-Ac transposable elements in maize, has given insight into the nature of these elements and the genetic changes that occur at their insertion and deletion sites. The characterization of the heterogeneous mitochondrial DNA and the uniform chloroplast DNA has helped to elucidate the molecular basis of cytoplasmic male sterility, RuBP carboxylase enzyme synthesis and herbicide resistance, In N2 fixation, the emphasis has been put on the molecular dissection of N2-fixing genes in bacteria and the interactions between symbiotic and host DNAs. It has been possible to develop vectors of Agrobacterium tumefaciens Ti-plasmids which lack oncogenes for DNA transfer. Cauliflower and gemini viruses as well as liposomes are also potential systems for DNA transport to protoplasts which can be regenerated into plants. Furthermore, it has been shown that certain molecular biological techniques are useful for screening purposes in genetic analysis and plant breeding work.
机译:现代分子生物学技术的使用在阐明植物基因分子组织的各个方面都发挥了重要作用。获得的大多数信息都涉及与植物育种有关的特征和现象。在分子水平上已经表明谷物和豆类种子的贮藏蛋白受复杂的多基因核基因座的控制。对可移动核基因的分析,以玉米中的Ds-Ac转座因子为例,已经深入了解了这些元素的性质以及在其插入和缺失位点发生的遗传变化。线粒体DNA和叶绿体DNA的异质性特征有助于阐明胞质雄性不育,RuBP羧化酶合成和除草剂抗性的分子基础。在N2固定中,重点是对N2固定基因的分子解剖在细菌中以及共生体和宿主DNA之间的相互作用。有可能开发缺少用于DNA转移的致癌基因的根癌农杆菌Ti质粒的载体。花椰菜和双子病毒以及脂质体也是将DNA转运到原生质体的潜在系统,原生质体可以再生为植物。此外,已经表明某些分子生物学技术可用于遗传分析和植物育种工作中的筛选目的。

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